WU Yi-can, YU Sheng-peng, CHENG Meng-yun, SONG Jing, HE Tao, HAO Li-juan, HU Li-qin, LONG Peng-cheng, LUO Yue-tong, WANG Dong, GAN Quan, WANG Wen, WU Bin, DONG Liang, YANG Qi. Design and Implementation of Multi-physics Coupling Analysis Modeling Program SuperMC/MCAM5.2[J]. Atomic Energy Science and Technology, 2015, 49(zengkan1): 1-6. DOI: 10.7538/yzk.2015.49.S0.0001
Citation: WU Yi-can, YU Sheng-peng, CHENG Meng-yun, SONG Jing, HE Tao, HAO Li-juan, HU Li-qin, LONG Peng-cheng, LUO Yue-tong, WANG Dong, GAN Quan, WANG Wen, WU Bin, DONG Liang, YANG Qi. Design and Implementation of Multi-physics Coupling Analysis Modeling Program SuperMC/MCAM5.2[J]. Atomic Energy Science and Technology, 2015, 49(zengkan1): 1-6. DOI: 10.7538/yzk.2015.49.S0.0001

Design and Implementation of Multi-physics Coupling Analysis Modeling Program SuperMC/MCAM5.2

  • The SuperMC is a general purpose, intelligent and multi-functional program for the design and safety analysis of nuclear systems. The SuperMC/MCAM (multi-physics coupling analysis modeling program) is the advanced modeling module of SuperMC aiming to provide accurate and efficient modeling functions for multi-physics simulation. The new version SuperMC/MCAM5.2 is capable to convert models between CAD model and multiple Monte Carlo codes including SuperMC, MCNP, FLUKA, Geant4 and TRIPOLI. The functions and the converting methodology between CAD and multiple Monte Carlo codes were introduced. The new converting functions for SuperMC, FLUKA and Geant4 were tested with the ITER benchmark model. The calculation results on converted Monte Carlo models agree with each other well, which verifies that these functions and methods are correct and efficient.
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